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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >A Novel Pyroelectric Method of Determining Ultrasonic Transducer Output Power: Device Concept, Modeling, and Preliminary Studies
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A Novel Pyroelectric Method of Determining Ultrasonic Transducer Output Power: Device Concept, Modeling, and Preliminary Studies

机译:确定超声换能器输出功率的新型热释电方法:装置概念,建模和初步研究

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This paper describes a new thermally based method of monitoring acoustic output power generated by ultrasonic transducers. Its novelty lies in the exploitation of the pyroelectric properties of a thin membrane of polyvinylidene fluoride (PVDF). The membrane is backed by a thick layer of polyurethane rubber that is extremely attenuating to ultrasound, with the result that the majority of the applied acoustic power is absorbed within a few millimeters of the membrane-backing interface. Through the resultant rapid increase in temperature of the membrane, a voltage is generated across its electrodes whose magnitude is proportional to the rate of change of temperature with respect to time. Changes in the pyroelectric voltage generated by switching the transducer ON and OFF are related to the acoustic power delivered by the transducer. Features of the technique are explored through the development of a simple one-dimensional model. An experimental evaluation of the potential secondary measurement technique is also presented, covering the frequency range 1 to 5 MHz, for delivered powers up to a watt. Predictions of the sensor output signals, as well as the frequency dependent sensitivity, are in good agreement with observation. The potential of the new method as a simple, rapid means of providing traceable ultrasonic power measurements is outlined.
机译:本文介绍了一种新的基于热的方法来监视超声换能器产生的声输出功率。它的新颖之处在于利用了聚偏二氟乙烯(PVDF)薄膜的热电性质。膜由厚厚的聚氨酯橡胶层支撑,该层对超声极度衰减,结果大部分施加的声功率在膜-衬界面的几毫米内被吸收。通过膜温度的迅速升高,在其电极两端产生电压,电压的大小与温度随时间的变化率成正比。通过打开和关闭换能器而产生的热释电电压的变化与换能器传递的声功率有关。通过开发简单的一维模型来探索该技术的特征。还介绍了潜在的二次测量技术的实验评估,涵盖了从1到5 MHz的频率范围,可提供高达瓦特的输出功率。传感器输出信号的预测以及与频率有关的灵敏度与观察结果非常吻合。概述了新方法作为提供可追溯的超声功率测量的简单,快速方法的潜力。

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